The present disclosure provides a lens module. The lens module includes a lens barrel with an optical aperture, the lens barrel including an outer wall and an inner wall opposite to the outer wall; at least one lens located in the lens barrel; a shading piece located by an object side or/and an image side of the lens. The shading piece includes an upper surface near the optical aperture, a lower surface away from the optical aperture, an outer ring surface connecting to the upper surface and the lower surface and near the inner wall of the lens barrel, and an inner ring surface connecting to both upper surface and lower surface and opposite to the outer ring surface. The inner ring surface is an arc facing an optical axis of the lens module.
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1. A lens module including:
a lens barrel with an optical aperture, the lens barrel including an outer wall and an inner wall opposite to the outer wall;
at least one lens located in the lens barrel;
a shading piece located by an object side or/and an image side of the lens, the shading piece including an upper surface near the optical aperture, a lower surface away from the optical aperture, an outer ring surface directly connecting to the upper surface and the lower surface and near the inner wall of the lens barrel, and an inner ring surface directly connecting to both upper surface and lower surface and opposite to the outer ring surface, wherein
the inner ring surface is a convex arc facing an optical axis of the lens module in a cross sectional view containing the optical axis, the point closest to the optical axis in the inner ring surface is closer to the optical axis than the lower surface and the upper surface.
2. The lens module as described in
3. The lens module as described in
4. The lens module as described in
5. The lens module as described in
6. The lens module as described in
7. The lens module as described in
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The present disclosure relates to optical imaging technology, especially for a lens module used for various electronic equipment.
Recent years, with a development of imaging technology and an emerging of an electronic product with an imaging function, an optical imaging lens has been extensively applied in various products, and improved and optimized constantly. Currently, a direction of improving most of imaging lenses is how to make the imaging lens smaller and thinner, and choose a proper lens with a good degree of adaptability of optical characteristics while making the imaging lens smaller and thinner, and study how to integrate them together to guarantee a good imaging result. The shading components, are usually used in a lens module for reflecting and absorbing the stray light, while the outside light enters into the lens module, the shading piece set in the lens module can stop the entry of the unnecessary light. However, although the shading piece used in the lens module controls the light, while the light is irradiating on the shading piece, the light reflected by the shading piece will interfere with the whole optical system, for example, while taking a picture, these stray light will generate unnecessary image on an imaging surface of a lens module, including a ghost image or sparkle etc.
Therefore it is necessary to provide a lens module for overcoming the above-mentioned disadvantages.
Many aspects of the exemplary embodiments can be better understood with reference to the following drawing. The components in the drawing are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure.
The present disclosure will hereinafter be described in detail with reference to several exemplary embodiments. To make the technical problems to be solved, technical solutions and beneficial effects of the present disclosure more apparent, the present disclosure is described in further detail together with the figure and the embodiments. It should be understood the specific embodiments described hereby is only to explain the disclosure, not intended to limit the disclosure.
A first embodiment of the present disclosure relates to a lens module. As shown in
Taking a shading piece 6 for example, the shading piece 6 includes an upper surface 61, a lower surface 62, an outer ring surface and an inner ring surface 63. In which, the upper surface 61 is near an optical aperture 11, and the lower surface 62 is away from the optical aperture 11, and the upper surface 61 and lower surface 62 are set oppositely, i.e.: the upper surface 61 is located opposite to the lower surface 62. The outer ring surface is near an inner wall 13 of a lens barrel 1, and connects both upper surface 61 and lower surface 62, and the inner ring surface 63 and the outer ring surface are set oppositely and connect to the upper surface 61 and the lower surface 62. Meanwhile, the inner ring surface 63 is an arc projecting towards an optical axis N.
Through above content, it is not difficult to find out that, set an inner ring surface 63 as a convex arc extending towards an optical axis N, and make the inner ring surface convex, in order to increase the area of the inner ring surface and add a direction of reflection, after the incident light enters, it can diffuse the reflection light irregularly, in order to reduce the energy of the reflection light, and decrease the interference to an optical system by the reflection light, and improve a ghost image and sparkle etc and improve the imaging quality of the whole lens module.
Specifically, as shown in
In addition, as shown in
The appearance structures of both shading piece 7 and shading piece 8 are consistent with the structure appearance of the shading piece 6, without further detailed description.
Further, as shown in
Finally, as shown in
Referring to
Referring to
It is to be understood, however, that even though numerous characteristics and advantages of the present exemplary embodiments have been set forth in the foregoing description, together with details of the structures and functions of the embodiments, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms where the appended claims are expressed.
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